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  1. 1 de ene. de 2021 · In addition to teach the proper utilization of spinnerets for membrane fabrication, we aim to establish a fundamental understanding of the relationship among polymer structure, dope rheology, spinneret design, process conditions, phase inversion, and hollow fiber performance.

  2. Spinneret, in the spinning of man-made fibre, small, thimble-shaped, metal nozzle having fine holes through which a spinning solution is forced to form a filament. The viscous or syrupy solution, prepared by melting or chemically dissolving raw material, emerges from the spinneret as long fibres.

  3. 19 de ene. de 2023 · Along with the fast development of materials science and technology in this nano era, electrospinning faces new challenges such as accurate manipulation of the inner structures of nanofibers and their related properties. The key lies in the spinneret, which is a template for duplicating complex nanostructures from the macrostructure ...

  4. 28 de ago. de 2022 · The materials used for the fabrication of the spinneret include metals or insulators whereas the collector includes aluminum foils and copper plates . The types of spinnerets and collectors used in the electrospinning process are shown in Figs. 1 and 2 .

  5. The jet generator, commonly referred to as the spinneret, introduces the polymer solution into the electric field and facilitates liquid distortion, Taylor cone formation, and jetting. The spinneret is the principal component differing between needle-based and needleless methods.

  6. 1 de ene. de 2021 · Abstract. Spinnerets are the heart of the entire spinning process to produce hollow fibers with desirable separation performance and properties. To produce hollow fibers with various configurations, distinct separation performance, and superior mechanical properties, spinnerets for single-layer fibers, dual-layer fibers, multibore ...

  7. 7 de oct. de 2021 · Spinneret geometry modulates the mechanical properties of man-made cellulose fibers. Original Research. Open access. Published: 07 October 2021. Volume 28 , pages 11165–11181, ( 2021 ) Cite this article. Download PDF. You have full access to this open access article. Kaniz Moriam, Daisuke Sawada, Kaarlo Nieminen, Yibo Ma, Marja Rissanen,